BACKGROUND OF THE INVENTION
1. Field of the Invention.
[0001] The present invention relates, generally, to veterinary and animal care systems,
apparatus and methods. Particularly, the invention relates to devices and method for
supporting and maintaining proper care of udders and teats in lactating animals.
2. Background Information.
[0002] For the health and safety of milk producing animals as well as those persons and
animals that consume the milk products derived from these animals, the udders and
teats of milk producing animals must be kept clean and healthy. This is particularly
true in the bovine dairying industry where complications such as mastitis, swollen
or cracked teats, and dirty and unclean teats can cause bacterial contamination of
entire vats of milk. This contamination can render hundreds or even thousands of gallons
of milk useless and can have severe economic effect on the dairyman who depends upon
the sale of acceptable uncontaminated milk as a source of income. The economic impacts
of contaminated or unacceptable milk can be devastating.
[0003] In order to prevent mastitis and other complications and to maintain a healthy milk
supply, the care, cleaning and hygiene of the teats and udders of the animals being
milked is of particular importance. In order to prevent the onset of mastitis, a variety
of procedures are utilized to stimulate, clean and disinfect the teats of the animal.
Most mastitis infections are related to conditions that expose the teat end to bacteria
and to situations that make it easier for these bacteria to penetrate the teat canal.
These bacteria then travel into the mammary gland where the infection causes an inflammatory
response that can cause destruction of milk secreting cells as well as contaminating
any of the milk that comes from these infected cows.
[0004] While various precautions have been taken to prevent the cow from developing mastitis,
such as pre-washing, stripping, and sanitizing of the milking equipment, the most
effective way of preventing the onset of mastitis involves the use of so called teat-dip
to apply a germicide to the teat both prior to and after milking. The application
of teat dip prior to milking typically requires that a teat be dipped into a cup having
a germicidal solution. The teat is then coated and after about 30 seconds the germicide
is dried off of the teat with a paper or cloth towel. This germicide destroys those
microorganisms that contaminate the teat skin between milkings. After milking has
been completed, the teats are again dipped into these cups and coated with a germicide.
This germicide prevents the growth and proliferation of organisms that can cause mastitis.
[0005] The application of teat dip to the teat is of utmost importance. It is crucial that
the entire teat be completely covered and that a residue is left on the teat so that
the anti-microbial action is still present when the cow lies down in a free stall
or any other place where sanitary conditions are less than ideal. Barrier teat dips
generally contain germicides, skin conditioners and protective film so that the teat
end is sealed from mastitis-causing bacteria. These barrier teat dips do inhibit bacterial
multiplication on the teat skin under the film.
[0006] One of the known methods and devices for applying teat dip is to utilize a dip cup
of a sprayer to coat the teat. The teat is typically dipped into the cup or sprayed
so as to apply the germicide. This presents several problems. First, obtaining the
proper coverage over the teat is not always accomplished, as the location of the germicide
upon the teat is dependent upon the skill of the person applying the solution to the
teat. Thus, locations or areas of the teat may not be covered and may be left exposed.
These uncovered areas provide locations wherein bacteria can congregate and proliferate.
When this occurs, the effectiveness of the teat dip as a whole has been compromised.
[0007] Both the dip and the spray method that exist in the prior art cause substantial amounts
of waste to take place. This waste occurs as excess material does not adhere to the
teat, falls off of the teat and on to the floor where it is subsequently washed away.
This germicide is a highly corrosive material that can then cause various economic
and environmental damage to the areas in which it contacts. This problem is exacerbated
by the spreading of the wasted solution, which is then washed into ponds of manure
pits, and then spread upon the ground. These germicides are hazardous to clean water
and the raising of crops on the earth.
[0008] The economic impact of this waste is also great. The dairy industry has become extremely
economically conservative because of low prices received for their product. Therefore,
the ability to reduce waste is of great value. A gallon of post dip for example, varies
in price from between $5 and $15 dollars per gallon. A typical 1,000-head milking
herd may require an average of about 350 gallons per month. Thus, the cost of utilizing
this dip may be between about $1,750 and $5,250 per month. The ability to reduce this
cost would greatly benefit a user and could provide, in some instances, the difference
between a farm surviving or failing.
[0009] Existing technology also includes
US Patents 7,165,510 entitled Bovine Germicide Application Device and
7,387,086 entitled Bovine Germicide Application Device and Method of applicant(s).
US2006/0107904 describes an application apparatus
BRIEF SUMMARY OF THE INVENTION
[0010] The invention provides bovine germicide application apparatus and method which are
practical, reliable, accurate and efficient, and which are believed to fulfill the
need and to constitute an improvement over the background technology.
[0011] The largest and most expensive challenge to milk producing farms is a disease called
mastitis. Mastitis is caused by unsanitary conditions, especially during the milking
process. Bacteria can easily enter the teat during the harvesting of the milk. A pre-dip
of germicide is applied to the skin of the teat prior to the milking process to kill
the bacteria that is on the skin of the teat. After the germicide has had sufficient
contact time with the skin of the teat to kill all bacteria the germicide is wiped
from the teat. The milk is then harvested and a post dip is then applied to the skin
of the teat to kill all milk cells left behind from harvesting and leave a protective
coating of germicide on the entire surface of the teat. 100% skin coverage of the
teat is required to reduce the chances of mastitis for both pre and post dipping.
The dairy industry is suffering through the worst financial crisis in history. With
the serious economic conditions dairymen are facing the bacteria laden environmental
conditions that the female lactating animal lives in, the apparatus and method of
the invention solves both problems. It provides substantially 100% skin coverage by
the germicide and reduces the amount used to .04 ounces per cow. For example, the
1,000 cow dairy, milking 2 times per day, using the standard open top dipper uses
450 gallons of pre and post germicide per month. The 1,000 cow dairy milking 2 times
per day using the invention gets 100% skin coverage and uses only 80 gallons of pre
and post germicide per month. This is a savings of 315 gallons per month at an average
cost of $6.00 per gallon or $870.00 per month or $10,440.00 per year.
[0012] According to one aspect of the invention there is provided an apparatus comprising
a body having an interior cavity, an article ingress/egress aperture, a material input
and a plurality of channels for conveying material from the material input to the
article ingress/egress aperture, a wiping element disposed near the article ingress/egress
aperture, the wiping element receiving material from the plurality of channels, and
the wiping element contacting an article entering or leaving the article ingress/egress
aperture and applying material to the article, and characterised by a cap communicatively
connected to the body at the article ingress/egress aperture, the cap comprising a
material distribution cavity surrounding the article ingress/egress aperture, the
plurality of channels being communicatively connected to the material distribution
cavity and the wiping device receiving material from the material distribution cavity.
[0013] The apparatus may comprise a bovine germicidal teat dip applicator apparatus, comprising:
- (a) a body having an interior cavity, a teat ingress/egress aperture, a teat dip input
and a plurality of channels for conveying teat dip from the teat dip input to the
teat ingress/egress aperture, wherein:
- (i) the body comprises an outer element and an inner element disposed within the outer
element, and wherein the plurality of channels is formed between the outer element
and the inner element, and
- (ii) a reservoir disposed between the inner and outer elements, the at least one channel
extending from the reservoir to the teat ingress/egress aperture, the teat dip input
being communicatively connected to the reservoir;
- (b) a wiping element disposed near the teat ingress/egress aperture, the wiping element
receiving material from the plurality of channels, and the wiping element contacting
an teat entering or leaving the teat ingress/egress aperture and applying teat dip
to the teat; and
- (c) a cap communicatively connected to the body at the teat ingress/egress aperture,
the cap comprising a teat dip distribution cavity surrounding the teat ingress/egress
aperture, the plurality of channels being communicatively connected to the teat dip
distribution cavity and the wiping device receiving teat dip from the teat dip distribution
cavity.
[0014] The aspects, features, advantages, benefits and objects of the invention will become
clear to those skilled in the art by reference to the following description, claims
and drawings.
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING
[0015]
Figure 1A is illustrates an embodiment of the germicidal teat dip applicator device
of the present invention in use.
Figure 1B is a front, elevation view of the applicator device with the squeeze bottle
member removed to show the draw tube.
Figure 2 is a top view of the applicator device.
Figure 3 is a crossectional view of the applicator device taken along line 3-3 of
Figure 2.
Figure 4 is an exploded view of the applicator device, without the bottle member.
Figure 5 is a perspective view of an embodiment of a main, outside cup member of the
applicator device.
Figure 6 is a front view of the outside cup member.
Figure 7 is a end view of the outside cup member.
Figure 8 is a side view of the outside cup member.
Figure 9 is a crossectional view of the outside cup member taken along line 9-9 of
Figure 10.
Figure 10 is a top view of the outside cup member.
Figure 11 is a detailed view of the area designated -11- in Figure 9.
Figure 12 is a perspective view of an embodiment of an inside cup member of the applicator
device, which is particularly useful for applying medicament to the teat of a cow
prior to milking (Pre).
Figure 13 is a side view of the inside cup member.
Figure 31 is a bottom view of the inside cup member.
Figure 15 is a top view of the inside cup member.
Figure 16 is a crossectional view of the inside cup member taken along line 16-16
of Figure 15.
Figure 17 is a detailed view of the region designated -17- in Figure 16.
Figure 18 is a perspective view of an embodiment of a cap member of the applicator
device.
Figure 19 is a bottom view of the cap member.
Figure 20 is an end view of the cap member.
Figure 21 is an opposite end view of the cap member.
Figure 22 is a crossectional view taken along line -22-22 of Figure 19.
Figure 23 is a detailed view of the area designated -23- in Figure 22.
Figure 24 is a perspective view of an embodiment of a wiper member of the applicator
device.
Figure 25 is an alternative embodiment of the inside cup member of the applicator
device, which is particularly useful for dosing after milking (Post).
Figure 26 is a side view of the inside cup member.
Figure 27 is a bottom view of the inside cup member.
Figure 28 is a top view of the inside cup member.
Figure 29 is a crossectional view of the inside cup member taken along line 29-29
of Figure 28.
Figure 30 is a detailed view of the region designated -30- in Figure 29.
Figure 31 is a perspective view of an alternative embodiment of a cap member of the
applicator device for use with the inside cup member of Figures 25-30.
Figure 32 is a bottom view of the cap member.
Figure 33 is an end view of the cap member.
Figure 34 is an opposite end view of the cap member.
Figure 35 is a crossectional view taken along line -35-35 of Figure 32.
Figure 36 is a detailed view of the area designated -36- in Figure 35.
Figure 37 is a further alternative embodiment of the inside cup member of the applicator
device, having longitudinal fluid channels that extend further downwardly on the cup.
Figure 38 is a side view of the inside cup member.
Figure 39 is a bottom view of the inside cup member.
Figure 40 is a top view of the inside cup member.
Figure 41 is a crossectional view of the inside cup member taken along line 41-41
of Figure 40.
Figure 42 is a detailed view of the region designated -42- in Figure 41.
Figure 43 is a front view of another embodiment of the applicator device of the present
invention which is useable with a powered medicament supply and delivery system.
Figure 44 is a top view of the applicator device of Figure 43.
Figure 45 is a front view of an embodiment of a cup member of the powered device.
Figure 46 is a front view of an embodiment of a cap member of the powered device.
Figure 47 is an end view of the cap member.
Figure 48 is a top view of the cap member.
Figure 49 is a top view of an embodiment of a handle member of the powered device.
Figure 50 is a front view of the handle member.
Figure 51 is an end view of the handle member.
Figure 52 is an opposite end view of the handle member.
Figure 53 a further end view of the handle member.
Figure 54 is a front view of an embodiment of a supply conduit of the powered applicator
device.
Figure 55 is a front view of a gasket of the handle member.
Figure 56 is a side view of the gasket.
Figure 57 is a front view of an alternative embodiment of the cup for use with the
powered device.
Figure 58 is a front view of an alternative embodiment of the cap for use with the
powered device.
Figure 59 is a top view of a gasket for use with the cap and cup of Figures 57 and
58.
Figure 60 is a side view of the gasket.
Figure 61 illustrates yet another embodiment of the applicator device and system for
applying form-type medicament, particular form teat dip.
Figure 62 illustrates delivery of foam teat dip via the applicator system.
Figure 63 illustrates still another embodiment of the inner cap member the applicator
device.
DETAILED DESCRIPTION
[0016] Figure 1 shows an embodiment of the bovine germicide application apparatus 10 of the present
invention. The apparatus 10 generally comprises an applicator assembly 20 and a germicide
source 21, preferably in the form of a squeeze bottle. The apparatus 10 is shown engaging
a teat 11 of an udder 12 of a cow. The apparatus 10 is hand holdable and actuatable.
Germicide or another medicament or fluid is contained in the bottle 21. The bottle
is squeezed by hand by the user and, as is described in detail below, germicide flows
upwardly into the applicator 20. Germicide is applied to the teat 11 during engagement
and in static state shown. As the apparatus 10 is removed, the entire teat 11 is further
coated by germicide and simultaneously substantially all excess germicide is removed
from the teat and re-captured by the apparatus 10. The bottle 21 is preferably constructed
of a polymeric material such as polyethylene (preferably clear or translucent) which
is flexible. Bottles of differing degrees of flexibility may be provided to accommodate
the user's hand size and strength, and other actuation factors. The bottle 21 preferably
has a volume of approximately 250ml.
[0017] Referring also to
Figs. 2-4, the applicator assembly 20 comprises an upper, outer cup member 30, inner cup member
or catch cup 31, a brush or wiper assembly 32, a cap or ring member 33, and a delivery
tube 34. The bottom end of the outer member 30 releasably connected, preferably by
screw threaded connection 22, to the top of the squeeze bottle 21. The deliver or
draw tube 34 is connected to (preferably via a friction fit) and extends from the
bottom of the outer member 30. It has a predetermined length which extends into the
bottle 21 to a point near the interior bottom to maximize contact with fluid in the
bottle 21. The top end of the outer member 30 is open ended and receives the inner
cup 31. The wiping member 32 is placed on top of the inner cup 31. And the cap 33
is place over the open top of the outer member 30.
[0018] As is best shown in
Figure 3, in an operative state, the inner cup 31 is retained completely within the outer
member 30. Further, the lateral inside dimensions of the outer member 30 is substantially
the same dimension as the lateral outside dimensions of the inner cup 31 such that
they are laterally tightly, sealing fit together. The inner cup 31 has an open top
and a teat cavity 35 of a predetermined dimension to receive and accommodate the teat
11. The bottom end of the inner cup 31 rests above the bottom of the interior of the
outer member 30 to thereby form a dip chamber or reservoir 36. Compression of the
squeeze bottle 21 causes fluid to travel up the draw tube and into the chamber 36.
From there, it travels up vertical fluid delivery channels formed by grooves 70 in
the inner cup 31. Fluid travels upwardly and substantially longitudinally to the cap
33 where it is distributed laterally inwardly and then over the wiping device 31,
also as described and shown further below. The wiping device 31 applies fluid to the
teat 11 both during placement on the teat 11 (engagement) and during retraction (removal)
from the teat 11. Excess fluid wiped off of the teat 11 by the wiper 32 drops into
the inner cavity 35 of the inner cup 31 where it may be applied to succeeding teats
11. The inner and outer members 31 and 30 are preferably constructed of a clear or
substantially clear material so that the user can visualize contact with the teat
11 and movement of fluid. Most preferably, the bottle 21 is also clear so that the
user can monitor fluid supply level.
[0019] Referring also to
Figures 5-11, the outer member 30 preferably has a handle 43. The outer member 30 is preferably
constructed of a polymeric material, preferably copolymer of polypropylene. It is
also preferably constructed via a molding process. The outer member 30 is shown to
have cylindrical lower portion 40, a tapered middle portion 41 and a short conical
upper portion 42. These form open topped interior cavity 55 with lateral inside dimensions
substantially equivalent to the outside lateral dimensions of the inner cup 31. The
upper portion 42 has an flat upper edge 56 that sealingly mates with the cap 33. On
the interior side of the member 30 the upper portion has a recess ring 57 that cooperates
with the cap 33 to distribute fluid around the entirety of the upper end of the device
20.
Figures 9 and 11 shows the bottom of the outer member 30 having a recess 50 with female threads 51
for engagement with the male threads 22 of the bottle 21. Ring 52 aids in sealing
the connection between the bottle 21 and the outer member 30. Draw tube connector
53 with aperture 54 are disposed at the bottom and connect to draw tube 34.
[0020] Figures 12 - 17 show the inner member 31, which is also preferably constructed of a polymeric material,
preferably copolymer of polypropylene. It is also preferably constructed via a molding
process. The inner member 31 is shown to have cylindrical lower portion 60, upper
radiused throat 64, a tapered upper portion 61, lower radius edge 63, and a generally
flat bottom 62. These form open topped interior cavity 35 with lateral outside dimensions
substantially equivalent to the inside lateral dimensions of the outer cup 30. The
upper portion 61 has a short cylindrical area 65 terminating in a flat upper edge
66 that also sealingly mates with the cap 33. As is best shown in
Figure 17, the interior side of the upper portion 61/65 has a fluid recess ring formed by inset
edge 68 and the interior lateral wall above it extending to detent ring 69 that cooperates
with the cap 33 to distribute fluid around the entirety of the upper end of the device
20. When the outside of wall 65 abuts the inside of wall 42 of outer cup 30, recess
57 forms fluid channel 96 shown in
Figure 3. Vertical, longitudinal grooves 70 a-f in the outside wall extend from the bottom
62 to the top 65. When the inner cup 31 is operatively disposed in the outer cup 30,
the grooves 70 define fluid channels extending from the dip reservoir36 to the fluid
recess ring (formed at 68/69). The grooves shown have dimensions for metering germicide
fluid (for example an iodine based composition) for treatment of teats prior to milking,
also known as pre-treatment. Since the cavity 35 is closed with respect to the channels
70, teat dip enters the cavity by excess dip being wiped from the teat 11 by the brushes
33 upon retraction of the device 10. Alternatively, referring to
Figure 63, one or more apertures 71 may be deployed in each groove/channel 70 to permit some
fluid being pumped upwardly to enter the cavity 35 directly. Fluid in the cavity 35
is then used to further coat the teat 11. The placement of the aperture 71 may be
varied vertically to control the amount or level of the liquid in the cavity 35. For
example, a higher aperture 71 along the length of the channel 70 permits a higher
level of liquid in the cavity 35 and a lower placement will lower the level.
[0021] Referring also to
Figure 24, the brush or wiper assembly 32 is disposed on the top of the inner member 31. The
brush assembly 32 preferably has an outer ring 80 and a plurality or array of flexible
bristles 81 which extend radially inwardly from the outer ring 80. The bristles 81
terminate inwardly to form a central teat receiving aperture 82. The ring 80 may be
constructed of metal, such as stainless steel. The ring 80 may be split or continuous.
The ring 80 is operatively placed on edge 68 of inner cup 31. Example wiper assemblies
32 are disclosed in US Patents of applicant, 7,165,510 and 7,387,086, which are hereby
incorporated by reference. The bristles 81 receive fluid at their outer circumference
and top, outward end, pumped from reservoir bottle 21 and convey it inwardly to be
applied to passing teat 11 skin.
[0022] The cap or ring member 33 is shown in further detail in
Figures 18-23. The cap is also preferably constructed of polypropylene. Cap 33 is disposed over
the assembly of outer cup, inner cup and wiping member 30/31/32 and holds them together
and in place. Cap 33 has a circular configuration with a bottom end 91 for connection
to the remaining elements of the assembly 20 and a top end 90 for engagement with
a teat 11. The cap 16 has a circular, vertical outer wall 92 and inwardly extending
flat, horizontal wall 96. Wall 96 has a central aperture 97. As is best shown in Figures
22 and 23, the interior surface 94 of wall 92 extends vertically to horizontal wall
96. Wall 96 has a flat ring surface area 96 which sealingly mates with edges 56 and
66 of outer and inner cups 30 and 31 respectively as shown in
Figure 3. Inwardly extending detent ring 95 creates a circumferential fluid distribution channel
for fluid pumped upwardly in channels 70. Radially, inwardly oriented grooves 100
a-1 in wall 96 form fluid delivery veins which direct fluid inwardly therefrom over
the top surface of wiper 32. The veins 100 shown have dimensions to cooperate with
the channels 70 of inner cup 31 for pre-treatment.
[0023] Handle or tab 98 extends from the bottom of the side wall 92 to aid in connection
and disconnection from the assembly 20. Notch 99 is shown disposed in side wall 92
and is aligned to permit connection of handle 43 of outer member 30.
[0024] In summary, in use, the teat of a cow is inserted through the brushes 32. The outer
member 30 holds the channeled inner insert cup 31 which in turn channels teat disinfectant
longitudinally to the brushes 32 by way of an annular reservoir contained within the
periphery of the snap on top 33. The body 20 of the apparatus 10 is in turn connected
to the squeezable bottle 21. When the bottle 21 is squeezed, it delivers fluid disinfectant
through the tube 34 into the space 36 at the bottom of the assembly 20 between the
inner and outer members 30 an 31, then through the longitudinal channels 70, then
into the top circumferential channel, and then to the radial veins 100, and finally
onto the application brushes 32.
[0025] Figures 25 - 30 show an alternative embodiment of the inner cup 105. The cup 105 has a substantially
similar construction, arrangement and dimensions to those of inner cup 31 described
above except that longitudinal/vertical grooves 106 a-f have larger dimensions for
metering more germicide/conditioner fluid for treatment of teats after milking, also
known as post-treatment.
[0026] Figures 31-36 show an alternative embodiment of the cap 110. The cap 110 has a substantially similar
construction, arrangement and dimensions to those of cap 33 described above except
that radial veins 111 a-1 have dimensions (larger) to cooperate with the channels
106 of inner cup 105 for post-treatment.
[0027] Figures 37 - 42 show an alternative embodiment of the inner cup 115. The cup 115 has a substantially
similar construction, arrangement and dimensions to those of inner cups 31 and 105
described above except that longitudinal/vertical grooves 116 a-f extend all of the
way to the bottom of the cup.
[0028] With respect to fluid supply, the squeeze bottle 21 may be replaced by other fluid
sources and delivery systems including a hand held lever actuated valve that is connected
to a hose by a pressurized pump.
Figures 41-55 show a powered pumping system 120 for use with standard wiping assemblies and inner
cups described above, including an outer cup or body 124, a cap 130, a handle assembly
140, and a delivery conduit assembly 135.
Figures 57-60 show alternative embodiments of the outer cup 145, cap 150 and washer 155 for powered
fluid delivery.
[0029] The teachings of this invention for liquid teat dips and other liquid compositions
are also applicable to foam germicides and compositions. Figures 61 and 62 show a
system for foam application including outer cups, inner cups, wiping device disclosed
above, and further including a foam pump, regulator and mixing valve. Foam oozes on
top of the brushes.
[0030] The advantages of the invention include, but are not limited to:
- 1) The apparatus provides substantially 100% teat dip coverage on the skin of the
teat.
- 2) The operator never carries a catch cup full of dip which is easily spilled. The
apparatus can be turned upside down and never spill more than a few drops of fluid.
- 3) By applying teat dip to the topside of the wiper it makes the apparatus a minimum
of 50% more economical in teat dip usage than the known devices.
- 4) Its unique design allows the operator to see through the transparent upper, outer
chamber and inner catch cup so that he can see that a minimal amount of teat dip is
being collected in the catch cup. This is vital information to the saving of teat
dip.
- 5) Because of its unique design, if the operator excessively squeezes the bottle and
applies an excess of dip to the top of the wiper, as soon as the pressure is released
from the bottle, the excess dip is retrieved back into the upper chamber by the negative
pressure created in the bottle.
- 6) The outer ridge of the exterior on the cap is elevated so that any excess dip is
retained on the brush and not spilled.
- 7) The catch cup is uniquely designed to catch excess drips and excess application
to the top of the wiper. That dip can be used to rehydrate the wiper by laying the
dip cup horizontally in your hand and rotating. Therefore, dip is never wasted.
- 8) Each bottle of fluid will treat approximately 150 cows.
- 9) The transparent upper chambers give vital information to managing savings. Teat
dip originates from the top of the brush and paints the dip on the teats, which is
new and unique.
[0031] Although the apparatus 10 is described with respect to delivery of a germicide, it
is within the purview of the invention that it can deliver other fluids.
[0032] The embodiments above are chosen, described and illustrated so that persons skilled
in the art will be able to understand the invention and the manner and process of
making and using it. The descriptions and the accompanying drawings should be interpreted
in the illustrative and not the exhaustive or limited sense. The invention is not
intended to be limited to the exact forms disclosed. While the application attempts
to disclose all of the embodiments of the invention that are reasonably foreseeable,
there may be unforeseeable insubstantial modifications that remain as equivalents.
It should be understood by persons skilled in the art that there may be other embodiments
than those disclosed which fall within the scope of the invention as defined by the
claims. Where a claim, if any, is expressed as a means or step for performing a specified
function it is intended that such claim be construed to cover the corresponding structure,
material, or acts described in the specification and equivalents thereof, including
both structural equivalents and equivalent structures, material-based equivalents
and equivalent materials, and act-based equivalents and equivalent acts.
1. An apparatus comprising a body (30) having an interior cavity (35), an article ingress/egress
aperture, a material input (34) and a plurality of channels (70) for conveying material
from the material input (34) to the article ingress/egress aperture, a wiping element
(32) disposed near the article ingress/egress aperture, the wiping element (32) receiving
material from the plurality of channels (70), and the wiping element (32) contacting
an article entering or leaving the article ingress/egress aperture and applying material
to the article, and characterised by a cap (33) communicatively connected to the body (30) at the article ingress/egress
aperture, the cap (33) comprising a material distribution cavity surrounding the article
ingress/egress aperture, the plurality of channels (70) being communicatively connected
to the material distribution cavity and the wiping device (32) receiving material
from the material distribution cavity.
2. The apparatus of claim 1, wherein the article is a teat of a cow, wherein the material
is a bovine germicidal teat dip composition, and wherein the apparatus applies the
teat dip composition to the teat upon entering or leaving the cavity (35) via the
article ingress/egress aperture.
3. The apparatus of claim 1, wherein the body (30) has a wall structure, a first end
of the wall structure wherein the material input (34) is disposed, a second end of
the wall structure wherein the article ingress/egress aperture is disposed and wherein
the plurality of channels (70) are communicatively connected to the wall structure.
4. The apparatus of claim 1, wherein the body (30) comprises an outer element (30) and
an inner element (31) disposed within the outer element (30), and wherein the plurality
of channels (70) are formed between the outer element (30) and the inner element (31).
5. The apparatus of claim 4, wherein the outer element (30) has a wall structure, a first
end of the wall structure wherein the material input (34) is disposed and a second
end of the wall structure wherein the article ingress/egress aperture is disposed
and, and wherein the inner element (31) has a closed wall structure with an article
ingress/egress aperture aligned with the article ingress/egress aperture of the outer
element (30), the interior cavity (35) being disposed within the inner element (31).
6. The apparatus of claim 5, wherein the plurality of channels (70) comprise grooves
(70) disposed in an outer side of the wall structure of the inner element (31).
7. The apparatus of claim 6, wherein the outer element wall has a predetermined first
inside dimension, wherein the inner element wall has a predetermined first outside
dimension, and wherein the first inside dimension of the outer wall element is substantially
equivalent to the first outside dimension of the inner wall element whereby the inner
element (31) sealingly fits in the first dimension of the outer element (30).
8. The apparatus of claim 7, further comprising a reservoir (36) between the inner and
outer elements (30, 31), the plurality of channels (70) extending from the reservoir
(36) to the article ingress/egress aperture, the material input (34) being communicatively
connected to the reservoir (36).
9. The apparatus of claim 1, wherein the material input (34) comprises a hose.
10. The apparatus of claim 9, further comprising a squeezable bottle (21) for containing
material and being sealingly connected to the hose.
11. The apparatus of claim 9, further comprising a pump powered material delivery system
connected to the hose.
12. The apparatus of claim 1, wherein the wiping element (32) comprises an array of flexible
brushes.
13. The apparatus of claim 1, wherein the wiping element (32) surrounds the article ingress/egress
aperture.
14. The apparatus of claim 1, wherein the body (30) has a portion of the material distribution
cavity and wherein the cap (33) has a mating, cooperating portion of the material
distribution cavity.
15. The apparatus of claim 1 wherein the cap (33) holds the wiping device (32) to the
body (30).
16. The apparatus of claim 1, wherein the cap (33) and wiping device (32) are connectible
and disconnectible to the body (30).
1. Gerät, das einen Körper (30) mit einer inneren Vertiefung (35), einer Gegenstandseintritts-/-austrittsöffnung,
einem Materialeingang (34) und mehreren Kanälen (70) zum Befördern von Material vom
Materialeingang (34) zur Gegenstandseintritts-/-austrittsöffnung, einem Wischelement
(32), das nahe der Gegenstandseintritts-/-austrittsöffnung angeordnet ist, umfasst,
wobei das Wischelement (32) Material von den mehreren Kanälen (70) empfängt und wobei
das Wischelement (32) mit einem Gegenstand, der in die Gegenstandseintritts-/-austrittsöffnung
eintritt oder diese verlässt, in Kontakt kommt und Material auf den Gegenstand aufbringt,
und gekennzeichnet durch eine Verschlusskappe (33), die mit dem Körper (30) an der Gegenstandseintritts-/-austrittsöffnung
kommunikativ verbunden ist, wobei die Verschlusskappe (33) eine Materialverteilungsvertiefung
umfasst, die die Gegenstandseintritts-/-austrittsöffnung umgibt, wobei die mehreren
Kanäle (70) mit der Materialverteilungsvertiefung kommunikativ verbunden sind und
die Wischvorrichtung (32) Material von der Materialverteilungsvertiefung empfängt.
2. Gerät nach Anspruch 1, wobei es sich bei dem Gegenstand um die Zitze einer Kuh handelt,
wobei es sich bei dem Material um eine keimtötende Rinderzitzeneintauchzusammensetzung
handelt und wobei das Gerät die Zitzeneintauchzusammenstzung auf die Zitze aufbringt,
wenn diese über die Gegenstandseintritts-/-austrittsöffnung in die Vertiefung (35)
eintritt oder diese verlässt.
3. Gerät nach Anspruch 1, wobei der Körper (30) eine Wandstruktur, ein erstes Ende der
Wandstruktur, in dem der Materialeingang (34) angeordnet ist, ein zweites Ende der
Wandstruktur, in dem die Gegenstandseintritts-/-austrittsöffnung angeordnet ist, aufweist
und wobei die mehreren Kanäle (70) mit der Wandstruktur kommunikativ verbunden sind.
4. Gerät nach Anspruch 1, wobei der Körper (30) eine äußeres Element (30) und ein inneres
Element (31), das innerhalb des äußeren Elements (30) angeordnet ist, umfasst und
wobei die mehreren Kanäle (70) zwischen dem äußeren Element (30) und dem inneren Element
(31) gebildet sind.
5. Gerät nach Anspruch 4, wobei das äußere Element (30) eine Wandstruktur, ein erstes
Ende der Wandstruktur, in der der Materialeingang (34) angeordnet ist, und ein zweites
Ende der Wandstruktur, in der die Gegenstandseintritts-/-austrittsöffnung angeordnet
ist, aufweist und wobei das innere Element (31) eine geschlossene Wandstruktur mit
einer Gegenstandseintritts-/-austrittsöffnung aufweist, die auf die Gegenstandseintritts-/-austrittsöffnung
des äußeren Elements (30) ausgerichtet ist, wobei die innere Vertiefung (35) innerhalb
des inneren Elements (31) angeordnet ist.
6. Gerät nach Anspruch 5, wobei die mehreren Kanäle (70) Rillen (70) umfassen, die in
einer Außenseite der Wandstruktur des inneren Elements (31) angeordnet sind.
7. Gerät nach Anspruch 6, wobei die Wand des äußeren Elements eine vorgegebene erste
Innenabmessung aufweist, wobei die Wand des inneren Elements eine vorgegebene erste
Außenabmessung aufweist und wobei die erste Innenabmessung des Außenwandelements im
Wesentlichen gleich der ersten Außenabmessung des Innenwandelements ist, wodurch das
innere Element (31) dichtend in die erste Abmessung des äußeren Elements (30) passt.
8. Gerät nach Anspruch 7, das ferner einen Behälter (36) zwischen dem inneren und dem
äußeren Element (30, 31) umfasst, wobei die mehreren Kanäle (70) sich von dem Behälter
(36) zu der Gegenstandseintritts-/-austrittsöffnung erstrecken, wobei der Materialeingang
(34) mit dem Behälter (36) kommunikativ verbunden ist.
9. Gerät nach Anspruch 1, wobei der Materialeingang (34) einen Schlauch umfasst.
10. Gerät nach Anspruch 9, das ferner eine drückbare Flasche (21) umfasst, die Material
enthält und dichtend mit dem Schlauch verbunden ist.
11. Gerät nach Anspruch 9, das ferner ein pumpenbetriebenes Materialabgabesystem umfasst,
das mit dem Schlauch verbunden ist.
12. Gerät nach Anspruch 1, wobei das Wischelement (32) eine Anordnung flexibler Bürsten
umfasst.
13. Gerät nach Anspruch 1, wobei das Wischelement (32) die Gegenstandseintritts-/- austrittsöffnung
umgibt.
14. Gerät nach Anspruch 1, wobei der Körper (30) einen Abschnitt der Materialverteilungsvertiefung
aufweist und wobei die Verschlusskappe (33) einen dazu passenden, zusammenwirkenden
Abschnitt der Materialverteilungsvertiefung aufweist.
15. Gerät nach Anspruch 1, wobei die Verschlusskappe (33) die Wischvorrichtung (32) am
Körper (30) hält.
16. Gerät nach Anspruch 1, wobei die Verschlusskappe (33) und die Wischvorrichtung (32)
am Körper (30) befestigt und davon gelöst werden können.
1. Appareil comprenant un corps (30) possédant une cavité intérieure (35), une ouverture
d'entrée/sortie d'objet, une entrée de produit (34) et une pluralité de canaux (70)
permettant d'apporter le produit de l'entrée de produit (34) jusqu'à l'ouverture d'entrée/sortie
d'objet, un élément d'essuyage (32) étant situé à proximité de l'ouverture d'entrée/sortie
d'objet, l'élément d'essuyage (32) recevant le produit en provenance de la pluralité
de canaux (70), et l'élément d'essuyage (32) étant mis au contact d'un objet entrant
ou sortant de l'ouverture d'entrée/sortie d'objet et appliquant du produit sur l'objet,
et caractérisé par un capuchon (33) raccordé de manière communicante au corps (30) au niveau de l'ouverture
d'entrée/sortie d'objet, le capuchon (33) comprenant une cavité de distribution de
produit qui entoure l'ouverture d'entrée/sortie d'objet, la pluralité de canaux (70)
étant raccordés de manière communicante à la cavité de distribution de produit et
au dispositif d'essuyage (32) recevant le produit en provenance de la cavité de distribution
de produit.
2. Appareil selon la revendication 1, dans lequel l'objet est un trayon de vache, le
produit est une composition germicide pour bovins appliquée par immersion du trayon,
et l'appareil applique la composition pour immersion du trayon sur ledit trayon lorsqu'il
entre ou sort de la cavité (35) par l'ouverture d'entrée/sortie de trayon.
3. Appareil selon la revendication 1, dans lequel le corps (30) possède une structure
de paroi, une première extrémité de structure de paroi dans laquelle est située l'entrée
de produit (34), une seconde extrémité de structure de paroi dans laquelle est située
l'ouverture d'entrée/sortie d'objet et dans laquelle la pluralité de canaux (70) est
raccordée de manière communicante à la structure de paroi.
4. Appareil selon la revendication 1, dans lequel le corps (30) comprend un élément extérieur
(30) et un élément intérieur (31) situé à l'intérieur de l'élément extérieur (30),
et dans lequel la pluralité de canaux (70) est constituée entre l'élément extérieur
(30) et l'élément intérieur (31).
5. Appareil selon la revendication 4, dans lequel l'élément extérieur (30) possède une
structure de paroi, une première extrémité de structure de paroi dans laquelle est
située l'entrée de produit (34) et une seconde extrémité de structure de paroi dans
laquelle est située l'ouverture d'entrée/sortie d'objet, et dans lequel l'élément
intérieur (31) possède une structure de paroi fermée dont une ouverture d'entrée/sortie
d'objet est alignée avec l'ouverture d'entrée/sortie d'objet de l'élément extérieur
(30), la cavité intérieure (35) étant située au sein de l'élément intérieur (31).
6. Appareil selon la revendication 5, dans lequel la pluralité de canaux (70) comprend
des rainures (70) disposées dans une face extérieure de la structure de paroi de l'élément
intérieur (31).
7. Appareil selon la revendication 6, dans lequel la paroi de l'élément extérieur présente
une première dimension intérieure prédéterminée, la paroi de l'élément intérieur présente
une première dimension extérieure prédéterminée, et dans lequel la première dimension
intérieure de l'élément à paroi extérieure est sensiblement équivalente à la première
dimension extérieure de l'élément à paroi intérieure, moyennant quoi l'élément intérieur
(31) épouse de manière hermétique la première dimension de l'élément extérieur (30).
8. Appareil selon la revendication 7, comprenant en outre un réservoir (36) entre les
éléments intérieur et extérieur (30, 31), la pluralité de canaux (70) menant du réservoir
(36) jusqu'à l'ouverture d'entrée/sortie d'objet, l'entrée de produit (34) étant raccordée
de manière communicante au réservoir (36).
9. Appareil selon la revendication 1, dans lequel l'entrée de produit (34) comprend un
tuyau.
10. Appareil selon la revendication 9, comprenant en outre un flacon souple (21) destiné
à contenir le produit et raccordé au tuyau de manière hermétique.
11. Appareil selon la revendication 9, comprenant en outre un système d'amenée de produit
par pompage raccordé au tuyau.
12. Appareil selon la revendication 1, dans lequel l'élément d'essuyage (32) comprend
un ensemble de brosses souples.
13. Appareil selon la revendication 1, dans lequel l'élément d'essuyage (32) entoure l'ouverture
d'entrée/sortie d'objet.
14. Appareil selon la revendication 1, dans lequel le corps (30) possède une partie de
la cavité de distribution de produit et le capuchon (33) possède une partie de couplage
par coopération de la cavité de distribution de produit.
15. Appareil selon la revendication 1, dans lequel le capuchon (33) retient le dispositif
d'essuyage (32) sur le corps (30).
16. Appareil selon la revendication 1, dans lequel le capuchon (33) et le dispositif d'essuyage
(32) peuvent être montés sur le corps (30) et démontés de celui-ci.